BMP4 sufficiency to induce choroid plexus epithelial fate from embryonic stem cell-derived neuroepithelial progenitors Journal Article


Authors: Watanabe, M.; Kang, Y. J.; Davies, L. M.; Meghpara, S.; Lau, K.; Chung, C. Y.; Kathiriya, J.; Hadjantonakis, A. K.; Monuki, E. S.
Article Title: BMP4 sufficiency to induce choroid plexus epithelial fate from embryonic stem cell-derived neuroepithelial progenitors
Abstract: Choroid plexus epithelial cells (CPECs) have essential developmental and homeostatic roles related to the CSF and blood-CSF barrier they produce. Accordingly, CPEC dysfunction has been implicated in many neurological disorders, such as Alzheimer's disease, and transplant studies have provided proof-of-concept for CPEC-based therapies. However, such therapies have been hindered by the inability to expand or generate CPECs in culture. During development, CPECs differentiate from preneurogenic neuroepithelial cells and require bone morphogenetic protein (BMP) signaling, but whether BMPs suffice for CPEC induction is unknown. Here we provide evidence for BMP4 sufficiency to induce CPEC fate from neural progenitors derived from mouse embryonic stem cells (ESCs). CPEC specification by BMP4 was restricted to an early time period after neural induction in culture, with peak CPEC competency correlating to neuroepithelial cells rather than radial glia. In addition to molecular, cellular, and ultrastructural criteria, derived CPECs (dCPECs) had functions that were indistinguishable from primary CPECs, including self-assembly into secretory vesicles and integration into endogenous choroid plexus epithelium following intraventricular injection.Wethen usedBMP4to generate dCPECs fromhumanESC-derived neuroepithelial cells. These findings demonstrate BMP4 sufficiency to instruct CPEC fate, expand the repertoire of stem cell-derived neural derivatives in culture, and herald dCPEC-based therapeutic applications aimed at the unique interface between blood, CSF, and brain governed by CPECs. © 2012 the authors.
Keywords: immunohistochemistry; controlled study; human cell; nonhuman; cytarabine; flow cytometry; animal cell; mouse; electron microscopy; animals; mice; cells, cultured; reverse transcription polymerase chain reaction; gene expression; confocal microscopy; embryonic stem cell; cell line; animal experiment; cell differentiation; ouabain; in situ hybridization; histochemistry; epithelium cell; epithelial cells; embryonic stem cells; upregulation; transcription factor pax6; neural stem cells; nerve cell differentiation; nestin; transcription factor otx2; bone morphogenetic protein 4; transcription factor sox1; choroid plexus; acetazolamide; aquaporin 1
Journal Title: The Journal of Neuroscience
Volume: 32
Issue: 45
ISSN: 0270-6474
Publisher: Society for Neuroscience  
Date Published: 2012-11-07
Start Page: 15934
End Page: 15945
Language: English
DOI: 10.1523/jneurosci.3227-12.2012
PROVIDER: scopus
PMCID: PMC3505486
PUBMED: 23136431
DOI/URL:
Notes: --- - "Export Date: 3 December 2012" - "CODEN: JNRSD" - "Source: Scopus"
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